Isospin effects on the energy of vanishing flow in heavy-ion collisions
arXiv:1005.1443 · doi:10.1088/0954-3899/37/8/085102
Abstract
Using the isospin-dependent quantum molecular dynamics model we study the isospin effects on the disappearance of flow for the reactions of + and + as a function of impact parameter. We found good agreement between our calculations and experimentally measured energy of vanishing flow at all colliding geometries. Our calculations reproduce the experimental data within 5%(10%) at central (peripheral) geometries.
References in corpus (3)
Cited by in corpus (9)
- Isospin effects in the disappearance of flow as a function of colliding geometry
- Pygmy and Giant Dipole Resonances by Coulomb Excitation using a Quantum Molecular Dynamics model
- Model ingredients and peak mass production in heavy-ion collisions
- Experimental balance energies and isospin-dependent nucleon-nucleon cross-sections
- Role of colliding geometry on the balance energy of mass-asymmetric systems
- On the density and temperature of neutron-rich systems at the energy of vanishing flow in heavy-ion collisions
- N/Z and N/A dependence of balance energy as a probe of symmetry energy in heavy-ion collisions
- The study of multifragmentation around transition energy in intermediate energy heavy-ion collisions
- Impact parameter dependence of the isospin effects and mass dependence of balance energy